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A dynamic pattern of mechanical stimulation promotes ossification in avian embryonic long bones.

机译:机械刺激的动态模式促进禽类胚胎长骨中的骨化。

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We have performed a set of finite element analyses of embryonic chick hindlimb skeletal rudiments at several time points during development, around the time of initial bone formation. Using optical projection tomography, we created anatomically accurate rudiment and muscle morphologies for each stage. The changes in pattern and magnitude of biophysical stimuli (such as stress, strain, hydrostatic pressure and fluid flow) were computed, and were found to transform as bone formation proceeded in the rudiment. For each biophysical stimulus, a single concentration of the stimulus was predicted at the mid-diaphysis some time before initial bone formation begins. Then, several hours before ossification, two concentrations of the stimuli were predicted distal and proximal to the prospective bone collar. Once bone formation had begun, high concentrations of the stimuli were maintained proximal and distal to the bone collar. We propose the hypothesis that patterns of biophysical stimuli resulting from mechanical loading due to muscle contractions initiate and propagate ossification in avian embryonic long bones, whereby a region of the perichondrium experiences a period of time under high cyclic stimulus levels, promoting chondrocyte hypertrophy at the core and prompting bone collar formation some hours later.
机译:我们在发育的几个时间点,大约在最初的骨形成时间,对胚胎的小鸡后肢骨骼ru进行了一组有限元分析。使用光学投影断层扫描,我们为每个阶段创建了解剖学上准确的基础和肌肉形态。计算了生物物理刺激的模式和大小的变化(例如应力,应变,静水压力和流体流量),发现其随着骨骼的形成而发生转变。对于每种生物物理刺激,在骨初始形成开始之前的某个时间,在骨干中期预测了单一浓度的刺激。然后,在骨化前几个小时,预测在预期骨环的远端和近端有两种浓度的刺激。一旦开始形成骨,就在骨环的近端和远端保持高浓度的刺激。我们提出这样的假设:由于肌肉收缩而产生的机械负荷引起的生物物理刺激的模式在禽类胚胎长骨中开始并传播骨化作用,从而在高循环刺激水平下,软骨膜的区域经历了一段时间,从而促进了软骨细胞的肥大并在几个小时后促使骨环形成。

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